CN207199754U - The hot-forming workbench of fuel cell - Google Patents

The hot-forming workbench of fuel cell Download PDF

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Publication number
CN207199754U
CN207199754U CN201720382153.6U CN201720382153U CN207199754U CN 207199754 U CN207199754 U CN 207199754U CN 201720382153 U CN201720382153 U CN 201720382153U CN 207199754 U CN207199754 U CN 207199754U
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CN
China
Prior art keywords
center
rectangle
electrode
bottom plate
fuel cell
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Expired - Fee Related
Application number
CN201720382153.6U
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Chinese (zh)
Inventor
王茹洁
李明
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North China Electric Power University
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North China Electric Power University
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Priority to CN201720382153.6U priority Critical patent/CN207199754U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/50Fuel cells

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Abstract

The utility model discloses a kind of hot-forming workbench of fuel cell, including:Rectangle bottom plate, fluting is provided with its length direction, and fluting is nearby provided with the first parallel graduation mark;Plate upper surface, which is provided with, to be clamped and fastened on the center of the plate upper surface by an electrode of fuel cell along the two foundation plate shelves bars slotted and moved;The center in baseplate width direction is provided with the first column, it is vertically moving to be connected with rectangular first fixed frame, two relative clamping parts are provided with first fixed frame, the proton membrane of fuel cell is clamped and fastened on center and is covered in lower electrode upper surface;The center in floor length direction is provided with the second column, it is vertically moving to be connected with rectangular second fixed frame, the two electrode shelves bars that can be moved along baseplate width direction are provided with second fixed frame, the upper electrode of fuel cell is clamped and fastened on the proton membrane upper surface that center is placed in fuel cell.

Description

The hot-forming workbench of fuel cell
Technical field
It the utility model is related to a proton exchanging film fuel battery special processing equipment.More specifically, this practicality is new Type is related to a kind of for workbench hot-forming in Proton Exchange Membrane Fuel Cells process.
Background technology
The core component of Proton Exchange Membrane Fuel Cells is membrane electrode.PEM of the component including fuel cell, Catalyst and electrode, wherein PEM are between upper electrode and lower electrode., it is necessary to by two blocks of electricity when processing battery Pole and PEM are alignd in length and width directions, then the integral membrane electrode of hot pressing.Prior art In, using manually mode, randomness is larger, causes electrode and PEM for the alignment adjustment of electrode and PEM Alignment adjustment needs be repeated, influence processing efficiency;If electrode and PEM do not have accurate alignment, electricity can be caused Pole marginal portion is crushed when battery assembles due to local pressure, have impact on follow-up test and use.
Utility model content
A purpose of the present utility model is that solve at least the above and/or defect, and provides and at least will be described later The advantages of.
In order to realize these purposes and further advantage of the present utility model, there is provided a kind of hot-forming work of fuel cell Platform, including:Rectangle bottom plate, fluting is provided with its length direction, and the fluting is nearby provided with parallel with the fluting First graduation mark, the center of first graduation mark are alignd with the center in the rectangle floor length direction, and Extend along the rectangle floor length direction to both sides;
The rectangle plate upper surface is provided with can be along the two foundation plate shelves bars slotted and moved, the bottom plate shelves The thickness of bar is slightly below a thickness of electrode of fuel cell, the lower electrode of battery be clamped in the two foundation plate shelves bar it Between;The first widthwise central to be alignd with the center on the rectangle baseplate width direction is provided with the bottom plate shelves bar Marking line, the bottom plate shelves bar and the position that contacts of slotting are provided with fixing device, and the bottom plate shelves bar is by the lower floor Electrode is clamped and fastened on the center of the rectangle plate upper surface;
The center in the rectangle baseplate width direction is provided with the first column, can vertically be moved on first column Dynamic is connected with rectangular first fixed frame, is provided with the width of first fixed frame and the rectangle bottom plate Second widthwise central marking line of the center alignment on width, is provided with relative two on first fixed frame Clamping part, the clamping part are socketed on first fixed frame, can be moved along the rectangle floor length direction, described Clamping part center is labeled with the first lengthwise centers marking line, and the proton membrane of fuel cell is clamped and fastened on by the clamping part The center of the rectangle bottom plate is simultaneously covered in the lower electrode upper surface;
The center in the rectangle floor length direction is provided with the second column, can vertically be moved on second column Dynamic is connected with rectangular second fixed frame, sets the second graduation mark on the width of second fixed frame, and described The center of two graduation marks is alignd with the center in the rectangle baseplate width direction, and wide along the rectangle bottom plate Spend direction to both sides to extend, can be moved along the rectangle baseplate width direction two are provided with second fixed frame Electrode shelves bar, the thickness of the electrode shelves bar are slightly below a thickness of electrode of fuel cell, and the upper electrode of battery is clamped in Between two electrodes shelves bar;It is provided with the electrode shelves bar and the center on the rectangle floor length direction The upper electrode is clamped and fastened on the rectangle bottom plate by the second lengthwise centers marking line of alignment, the electrode shelves bar Center is placed in proton membrane upper surface.
Preferably, wherein the fluting includes two flutings set parallel to the rectangle floor length direction.
Preferably, wherein what the center that first column is included in described two broadsides of rectangle bottom plate was set Two root posts.
Preferably, wherein what the center that second column is included in described two long sides of rectangle bottom plate was set Two root posts.
Preferably, wherein the position that the clamping part contacts with proton membrane is provided with skid resistant course.
Preferably, wherein the upper electrode contact site of the electrode shelves bar and fuel cell is provided with skid resistant course.
Preferably, wherein the fixing device is standing screw and fixing nut, the standing screw stretches into described open In groove, the rectangle bottom plate bottom surface is provided with the fixing nut matched with the standing screw.
Preferably, wherein the connecting line of first column and first fixed frame is arranged on first fixed frame The center of width, the second widthwise central marking line are marked on the connecting line.
The utility model comprises at least following beneficial effect:Align structures, therefore energy are adjusted respectively as a result of three layers Enough centre bits that two pieces of electrodes and PEM are carried out to alignment rectangle bottom plate from length direction and width respectively Put, it is ensured that one-shot forming is processed in the hot pressing of proton film battery, is avoided and is adjusted aligned position repeatedly, improves operating efficiency.
Further advantage, target and feature of the present utility model embody part by following explanation, and part will also pass through Research of the present utility model and practice are understood by the person skilled in the art.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
What Fig. 2 illustrated is the structural representation for having installed bottom electrode and middle level proton membrane additional;
What Fig. 3 illustrated is the independent structural representation for installing bottom electrode additional;
What Fig. 4 illustrated is the independent structural representation for installing middle level proton membrane additional;
What Fig. 5 illustrated is the independent structural representation for installing upper electrode additional.
Embodiment
The utility model is described in further detail below in conjunction with the accompanying drawings, to make those skilled in the art with reference to explanation Book word can be implemented according to this.
It should be appreciated that such as " having ", "comprising" and " comprising " term used herein do not allot one or more The presence or addition of individual other elements or its combination.
Fig. 1~5 are shown according to a kind of way of realization of the present utility model, including:
Rectangle bottom plate 1, fluting 11 is provided with its length direction, the fluting 11 is nearby provided with and the fluting 11 The first parallel graduation mark 12, the center of first graduation mark 12 and the center of the length direction of rectangle bottom plate 1 Aligned in position, and extend along the length direction of rectangle bottom plate 1 to both sides;The upper surface of rectangle bottom plate 1 is provided with can With the two foundation plate shelves bars 13 moved along the fluting 11, the thickness of the bottom plate shelves bar 13 is slightly below an electricity of fuel cell Pole thickness, the lower electrode of battery are clamped between two foundation plate shelves bars 13.The effect of the component is:By two foundation plate shelves bars 13 along the adjustment of displacement of the skew of fluting 11 first graduation mark 12 centers be it is equal, can be by lower electrode length direction Lower electrode, i.e., be placed in the rectangle bottom plate by the center of the first graduation mark 12 of center alignment in the longitudinal direction The center of 1 length direction;Two foundation plate shelves bars 13 move to both sides respectively along the fluting 11, are adapted to different length Electrode.
First to be alignd with the center on the width of rectangle bottom plate 1 is provided with the bottom plate shelves bar 13 Widthwise central marking line 14, the effect of the component are:By in the first width of center alignment on lower electrode width Heart marking line 14, i.e., lower electrode is placed in the center of the width of rectangle bottom plate 1 in the direction of the width.
The position that the bottom plate shelves bar 13 contacts with the fluting 11 is provided with fixing device 15, and the effect of the component is: The bottom plate shelves bar 13 can be fixed on fluting 11 using fixing device 15, so that the bottom plate shelves bar 13 is by lower floor Electrode is clamped and fastened on the center of the upper surface of rectangle bottom plate 1, facilitates the installation of follow-up proton membrane and upper electrode With fixation.
The center of the width of rectangle bottom plate 1 is provided with the first column 21, can on first column 21 What is vertically moved is connected with rectangular first fixed frame 22, be provided with the width of first fixed frame 22 with it is described Second widthwise central marking line 23 of the center alignment on the width of rectangle bottom plate 1;The effect of the component is:By matter Proton membrane, i.e., be placed in institute by the second widthwise central marking line 23 of center alignment on sub- film width in the direction of the width State the center of the width of rectangle bottom plate 1.
Two relative clamping parts 24 are provided with first fixed frame 22, the clamping part 24 is socketed in described first On fixed frame 22, it can be moved along the length direction of rectangle bottom plate 1, the center of clamping part 24 is labeled with the first length Degree center marking line 25;The effect of the component is:The clamping part 24 is moved into tune along the length direction of rectangle bottom plate 1 It is whole so that the center of the first lengthwise centers marking line 25 and the center of the length direction of rectangle bottom plate 1 Alignment;By on proton membrane length direction center align the first lengthwise centers marking line 25, i.e., by proton membrane in length side The center of the length direction of rectangle bottom plate 1 is placed in upwards;Proton membrane is clamped and fastened on described by the clamping part 24 The center of rectangle bottom plate 1 is simultaneously covered in the lower electrode upper surface, facilitates the installation and fixation of follow-up upper electrode.
The center of the length direction of rectangle bottom plate 1 is provided with the second column 31, can on second column 31 What is vertically moved is connected with rectangular second fixed frame 32, and the second graduation mark is set on the width of second fixed frame 33, the center of second graduation mark 33 is alignd with the center of the width of rectangle bottom plate 1, and along described The width of rectangle bottom plate 1 extends to both sides, and being provided with second fixed frame 32 can be wide along the rectangle bottom plate 1 Two electrode shelves bars 34 of direction movement are spent, the thickness of the electrode shelves bar 34 is slightly below a thickness of electrode of fuel cell, The upper electrode of battery is clamped between two electrode shelves bars 34.The effect of the component is:By two electrode shelves bars 34 along described Second fixed frame 32 offsets the adjustment of displacement of the center of second graduation mark 33 to be equal, can be by the upper strata electricity of battery The center of the second graduation mark 33 of center alignment on the width of pole, i.e., by the upper electrode of battery in width On be placed in the center of the width of rectangle bottom plate 1;Two electrode shelves bars 34 are distinguished along second fixed frame 32 Moved to both sides, be adapted to the electrode of different in width.
Second to be alignd with the center on the length direction of rectangle bottom plate 1 is provided with the electrode shelves bar 34 Lengthwise centers marking line 35, the effect of the component are:By the center alignment second on the upper electrode length direction of battery Lengthwise centers marking line 35, i.e., the upper electrode of battery is placed in the length direction of rectangle bottom plate 1 in the longitudinal direction Center.The upper electrode of battery is clamped and fastened on the center of the rectangle bottom plate 1 simultaneously by the electrode shelves bar 34 Proton membrane upper surface is placed in, so as to which lower electrode, middle level proton membrane and upper electrode are all placed in the rectangle bottom plate 1 Heart position, conveniently follow-up whole fuel cell is hot-forming.
In this technical scheme, first the lower electrode of fuel cell is clamped and fastened on bottom plate shelves bar 13 described rectangular The center of the upper surface of shape bottom plate 1, then proton membrane is clamped and fastened on to clamping part 24 centre bit of the rectangle bottom plate 1 Put and be covered in lower electrode upper surface, the upper electrode of battery is finally clamped and fastened on the rectangle with electrode shelves bar 34 The center of bottom plate 1 is placed in proton membrane upper surface, so as to which lower electrode, middle level proton membrane and upper electrode are all placed in into institute State the center of rectangle bottom plate 1.
In another example, the fluting 11 includes two set parallel to the length direction of rectangle bottom plate 1 Fluting.Make it that bottom plate shelves bar 13 is more reliable and more stable for gripping for lower electrode using this scheme.Also, this side Formula is a kind of explanation of preferred embodiments, but is not limited thereto., can be according to user's demand when implementing the utility model Embodiment aspect.
A kind of implementation of first column 21 in such scheme is:First column 21 is included in the length The two root posts that the center of 1 two broadsides of square floor is set.First fixed frame 22 is enabled using this scheme Enough effective keep level states, so that it is guaranteed that proton membrane is clamped and fastened on the centre bit of the rectangle bottom plate 1 by clamping part 24 Put.
A kind of implementation of second column 31 in such scheme is:Second column 31 is included in the length The two root posts that the center of 1 two long sides of square floor is set.Second fixed frame 32 is enabled using this scheme Enough effective keep level states, so that it is guaranteed that the upper electrode of battery is clamped and fastened on the rectangle bottom plate by electrode shelves bar 34 1 center.
A kind of implementation of the clamping part 24 in such scheme is:The portion that the clamping part 24 contacts with proton membrane Position is provided with skid resistant course.The clamping part 24 is enabled effectively to fix proton membrane using this scheme, so that it is guaranteed that clamping part 24 are clamped and fastened on proton membrane the center of the rectangle bottom plate 1.
A kind of implementation of the electrode shelves bar 35 in such scheme is:The upper strata of the electrode shelves bar 35 and battery Electrode contact position is provided with skid resistant course.The upper of the effective self-contained battery of the electrode shelves bar 35 is enabled using this scheme Layer electrode, so that it is guaranteed that the upper electrode of battery is clamped and fastened on the center of the rectangle bottom plate 1 by electrode shelves bar 34.
A kind of implementation of the fixing device 15 in such scheme is:The fixing device 15 is standing screw 1501 and fixing nut 1502, the standing screw 1501 is stretched into the fluting 11, and the bottom surface of rectangle bottom plate 1 is provided with The matched fixing nut 1502 with the standing screw 1501.Using this scheme the fixing device 15 can adapt to The lower electrode of different length, and the position of the bottom plate shelves bar 14 can be effectively fixed, so that it is guaranteed that bottom plate shelves bar 14 is by under Layer electrode is clamped and fastened on the center of the rectangle bottom plate 1.
A kind of implementation of the second widthwise central marking line 23 in such scheme is:First column 21 with The connecting line of first fixed frame 22 is arranged on the center of the width of the first fixed frame 22, second width Center marking line 23 is marked on the connecting line.The second widthwise central marking line 23 is caused and in institute using this scheme State connecting line to be combined into one, so that the second widthwise central marking line 23 is more succinct clear and definite.
Number of devices and treatment scale described herein are for simplifying explanation of the present utility model.To the utility model Application, modifications and variations will be readily apparent to persons skilled in the art.
As described above, according to the utility model, due to using bottom plate shelves bar stationary positioned lower electrode, consolidated using clamping part Middle level proton membrane is positioned, using electrode shelves bar stationary positioned upper electrode, so as to by lower electrode, middle level proton membrane and upper strata Electrode is all placed in the center of the rectangle bottom plate 1, thus ensuring that two electrodes and proton membrane accurate alignment, are avoided What is manually adjusted is repeated, and has the remarkable result for improving battery processing efficiency and yield rate.
Although embodiment of the present utility model is disclosed as above, it is not restricted in specification and embodiment Listed utilization.It can be applied to various suitable fields of the present utility model completely.For those skilled in the art, Other modification is easily achieved.Therefore under the universal limited without departing substantially from claim and equivalency range, this reality Specific details is not limited to new and shown here as the legend with description.

Claims (8)

  1. A kind of 1. hot-forming workbench of fuel cell, it is characterised in that including:
    Rectangle bottom plate, fluting is provided with its length direction, and the fluting is nearby provided with first parallel with the fluting Graduation mark, the center of first graduation mark are alignd with the center in the rectangle floor length direction, and along institute Rectangle floor length direction is stated to both sides to extend;
    The rectangle plate upper surface is provided with the two foundation plate shelves bars that can be moved along the fluting, the bottom plate shelves bar Thickness is slightly below a thickness of electrode of fuel cell, and the lower electrode of battery is clamped between the two foundation plate shelves bar;Institute State the first widthwise central mark for being provided with bottom plate shelves bar and being alignd with the center on the rectangle baseplate width direction Line, the bottom plate shelves bar and the position that contacts of slotting are provided with fixing device, and the bottom plate shelves bar is by the lower electrode It is clamped and fastened on the center of the rectangle plate upper surface;
    The center in the rectangle baseplate width direction is provided with the first column, vertically moving on first column Rectangular first fixed frame is connected with, is provided with the width of first fixed frame and the rectangle baseplate width Second widthwise central marking line of the center alignment on direction, two relative clampings are provided with first fixed frame Portion, the clamping part are socketed on first fixed frame, can be moved along the rectangle floor length direction, the clamping Portion center is labeled with the first lengthwise centers marking line, and the proton membrane of fuel cell is clamped and fastened on described by the clamping part The center of rectangle bottom plate is simultaneously covered in the lower electrode upper surface;
    The center in the rectangle floor length direction is provided with the second column, vertically moving on second column Rectangular second fixed frame is connected with, the second graduation mark, second quarter are set on the width of second fixed frame The center of degree line is alignd with the center in the rectangle baseplate width direction, and along the rectangle baseplate width side Extend to both sides, two electrodes that can be moved along the rectangle baseplate width direction are provided with second fixed frame Shelves bar, the thickness of the electrode shelves bar are slightly below a thickness of electrode of fuel cell, and the upper electrode of battery is clamped in described Between two electrode shelves bars;It is provided with the electrode shelves bar and is alignd with the center on the rectangle floor length direction The second lengthwise centers marking line, the upper electrode is clamped and fastened on the center of the rectangle bottom plate by the electrode shelves bar Position is placed in proton membrane upper surface.
  2. 2. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:The fluting is included parallel to institute State two flutings of rectangle floor length direction setting.
  3. 3. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:First column is included in institute State the two root posts that the center of two broadsides of rectangle bottom plate is set.
  4. 4. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:Second column is included in institute State the two root posts that the center of two long sides of rectangle bottom plate is set.
  5. 5. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:The clamping part connects with proton membrane Tactile position is provided with skid resistant course.
  6. 6. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:The electrode shelves bar and fuel electricity The upper electrode contact site in pond is provided with skid resistant course.
  7. 7. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:The fixing device is fixed spiral shell Bar and fixing nut, the standing screw are stretched into the fluting, and the rectangle bottom plate bottom surface is provided with and the fixed spiral shell The matched fixing nut of bar.
  8. 8. the hot-forming workbench of fuel cell as claimed in claim 1, it is characterised in that:First column and described the The connecting line of one fixed frame is arranged on the center of the first fixed frame width, the second widthwise central marking line Mark on the connecting line.
CN201720382153.6U 2017-04-12 2017-04-12 The hot-forming workbench of fuel cell Expired - Fee Related CN207199754U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720382153.6U CN207199754U (en) 2017-04-12 2017-04-12 The hot-forming workbench of fuel cell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720382153.6U CN207199754U (en) 2017-04-12 2017-04-12 The hot-forming workbench of fuel cell

Publications (1)

Publication Number Publication Date
CN207199754U true CN207199754U (en) 2018-04-06

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Application Number Title Priority Date Filing Date
CN201720382153.6U Expired - Fee Related CN207199754U (en) 2017-04-12 2017-04-12 The hot-forming workbench of fuel cell

Country Status (1)

Country Link
CN (1) CN207199754U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112701313A (en) * 2020-12-30 2021-04-23 张家口市氢能科技有限公司 Combined device and method for preparing fuel cell membrane electrode

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112701313A (en) * 2020-12-30 2021-04-23 张家口市氢能科技有限公司 Combined device and method for preparing fuel cell membrane electrode

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180406

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